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当聚集诱导发光与钙钛矿相遇:用于钙钛矿太阳能电池常温制备的高效缺陷钝化和电荷转移

When Aggregation-Induced Emission Meets Perovskites: Efficient Defect-Passivation and Charge-Transfer for Ambient Fabrication of Perovskite Solar Cells.

作者信息

Gu Ningxia, Zhang Pengyun, Song Lixin, Du Pingfan, Ning Lei, Buregeya Ingabire Providence, Chen Wei-Hsiang, Wang Yijia, Xiong Jie

机构信息

College of Textile Science and Engineering, Zhejiang Sci-Tech University, Hangzhou, 310018, China.

School of Science, Huzhou University, Huzhou, 313000, China.

出版信息

Chemistry. 2022 Aug 1;28(43):e202200850. doi: 10.1002/chem.202200850. Epub 2022 Jun 15.

Abstract

The intrinsic defects in perovskite film can serve as non-radiative recombination center to limit the performance and stability of metal halide perovskite solar cells (PSCs). The additive engineering in perovskite film is always applied to produce high-efficiency PSCs in recent years. Here, a typical donor-acceptor (D-A) structured aggregation-induced emission (AIE) molecule tetraphenylethene-2-dicyano-methylene-3-cyano-4,5,5-trimethyl-2,5-dihydrofuran (TPE-TCF) was introduced into perovskite film. The D-A structure of TPE-TCF molecule provided additional charge transfer channels, contributing to transporting electron of TPE-TCF-based device. The cyano (C≡N) of TPE-TCF can interact with the uncoordinated Pb to from a relatively stable intermediate, PbI ⋅TPE-TCF, resulting in the slower crystal growth, reduced the defects at the grain boundaries and suppressed carrier recombination. As a consequence, the power conversion efficiency (PCE) of TPE-TCF-modified PSCs achieved a remarkably enhanced from 15.63 to 19.66 % with negligible hysteresis, which was prominent in methylammonium lead iodide-based devices fabricated under ambient condition. Furthermore, the PSCs modified by AIE molecule possessed an outstanding stability and maintain about 86 % of the initial PCE after 300 h storage in air at 25-35 °C with a high relative humidity (RH) of ≈85 %. This work suggests that incorporating AIE molecule into perovskite is a promising strategy for facilitating high-performance PSCs commercialization in ambient environment without glovebox.

摘要

钙钛矿薄膜中的固有缺陷可作为非辐射复合中心,限制金属卤化物钙钛矿太阳能电池(PSC)的性能和稳定性。近年来,钙钛矿薄膜中的添加剂工程一直被用于制造高效的PSC。在此,将一种典型的供体-受体(D-A)结构的聚集诱导发光(AIE)分子四苯乙烯-2-二氰基亚甲基-3-氰基-4,5,5-三甲基-2,5-二氢呋喃(TPE-TCF)引入钙钛矿薄膜中。TPE-TCF分子的D-A结构提供了额外的电荷转移通道,有助于基于TPE-TCF的器件传输电子。TPE-TCF的氰基(C≡N)可与未配位的Pb相互作用形成相对稳定的中间体PbI·TPE-TCF,导致晶体生长变慢,减少了晶界处的缺陷并抑制了载流子复合。结果,TPE-TCF修饰的PSC的功率转换效率(PCE)从15.63%显著提高到19.66%,滞后可忽略不计,这在环境条件下制备的甲基碘化铅基器件中很突出。此外,由AIE分子修饰的PSC具有出色的稳定性,在25-35°C、相对湿度(RH)约为85%的空气中储存300小时后,仍保持约86%的初始PCE。这项工作表明,将AIE分子掺入钙钛矿是在无手套箱的环境中促进高性能PSC商业化的一种有前途的策略。

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